Apanteles wilbertharayai Fernandez-Triana
publication ID |
https://dx.doi.org/10.3897/zookeys.383.6418 |
publication LSID |
lsid:zoobank.org:pub:93106FE9-82C8-4937-91E7-339AEAD74BE5 |
persistent identifier |
https://treatment.plazi.org/id/848A13C9-31A8-4C96-95B4-7CB0BB3E0DC8 |
taxon LSID |
lsid:zoobank.org:act:848A13C9-31A8-4C96-95B4-7CB0BB3E0DC8 |
treatment provided by |
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scientific name |
Apanteles wilbertharayai Fernandez-Triana |
status |
sp. n. |
Apanteles wilbertharayai Fernandez-Triana sp. n. Figs 20, 222
Type locality.
COSTA RICA, Alajuela, ACG, Sector San Cristobal, Quebrada Cementerio, 700m, 10.87124, -85.38749.
Holotype.
♀ in CNC. Specimen labels: 1. DHJPAR0039765. 2. Voucher: D.H.Janzen & W.Hallwachs, DB: http://janzen.sas.upenn.edu, Area de Conservación Guanacaste, COSTA RICA, 09-SRNP-3520.
Description.
Female. Body color: body mostly dark except for some sternites which may be pale. Antenna color: scape, pedicel, and flagellum dark. Coxae color (pro-, meso-, metacoxa): dark, dark, dark. Femora color (pro-, meso-, metafemur): anteriorly dark/posteriorly pale, dark, dark. Tibiae color (pro-, meso-, metatibia): pale, pale, anteriorly pale/posteriorly dark. Tegula and humeral complex color: tegula pale, humeral complex half pale/half dark. Pterostigma color: mostly pale and/or transparent, with thin dark borders. Fore wing veins color: mostly white or entirely transpar ent. Antenna length/body length: antenna about as long as body (head to apex of metasoma); if slightly shorter, at least extending beyond anterior 0.7 metasoma length. Body in lateral view: not distinctly flattened dorso–ventrally. Body length (head to apex of metasoma): 3.1-3.2 mm. Fore wing length: 3.3-3.4 mm. Ocular–ocellar line/posterior ocellus diameter: 2.3-2.5. Interocellar distance/posterior ocellus diameter: 2.3-2.5. Antennal flagellomerus 2 length/width: 2.6-2.8. Antennal flagellomerus 14 length/width: 1.4-1.6. Length of flagellomerus 2/length of flagellomerus 14: 2.0-2.2. Tarsal claws: simple. Metafemur length/width: 3.0-3.1. Metatibia inner spur length/metabasitarsus length: 0.4-0.5. Anteromesoscutum: mostly with shallow, dense punctures (separated by less than 2.0 × its maximum diameter). Mesoscutellar disc: with punctures near margins, central part mostly smooth. Number of pits in scutoscutellar sulcus: 9 or 10. Maximum height of mesoscutellum lunules/maximum height of lateral face of mesoscutellum: 0.6-0.7. Propodeum areola: completely defined by carinae, including transverse carina extending to spiracle. Propodeum background sculpture: mostly sculptured. Mediotergite 1 length/width at posterior margin: 1.4-1.6. Mediotergite 1 shape: clearly widening towards posterior margin. Mediotergite 1 sculpture: mostly sculptured, excavated area centrally with transverse striation inside and/or a polished knob centrally on posterior margin of mediotergite. Mediotergite 2 width at posterior margin/length: 4.4-4.7. Mediotergite 2 sculpture: with some sculpture, mostly near posterior margin. Outer margin of hypopygium: with a wide, medially folded, transparent, semi–desclerotized area; usually with 4 or more pleats. Ovipositor sheaths length/metatibial length: 1.4-1.5. Length of fore wing veins r/2RS: 2.3 or more. Length of fore wing veins 2RS/2M: 1.1-1.3. Length of fore wing veins 2M/(RS+M)b: 0.7-0.8. Pterostigma length/width: 3.1-3.5. Point of insertion of vein r in pterostigma: clearly beyond half way point length of pterostigma. Angle of vein r with fore wing anterior margin: more or less perpendicular to fore wing margin. Shape of junction of veins r and 2RS in fore wing: distinctly but not strongly angled.
Male. Unknown.
Molecular data.
Sequences in BOLD: 1, barcode compliant sequences: 1.
Biology/ecology.
Solitary (Fig. 222). Host: Elachistidae , Anadasmus Janzen28.
Distribution.
Costa Rica, ACG.
Etymology.
We dedicate this species to Wilberth Araya in recognition of his diligent efforts for the ACG Programa de Sectores.
No known copyright restrictions apply. See Agosti, D., Egloff, W., 2009. Taxonomic information exchange and copyright: the Plazi approach. BMC Research Notes 2009, 2:53 for further explanation.
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